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SNPs3D: Candidate gene and SNP selection for association studies

机译:SNPS3D:候选基因和关联研究的SNP选择

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Background The relationship between disease susceptibility and genetic variation is complex, and many different types of data are relevant. We describe a web resource and database that provides and integrates as much information as possible on disease/gene relationships at the molecular level. Description The resource http://www.SNPs3D.org has three primary modules. One module identifies which genes are candidates for involvement in a specified disease. A second module provides information about the relationships between sets of candidate genes. The third module analyzes the likely impact of non-synonymous SNPs on protein function. Disease/candidate gene relationships and gene-gene relationships are derived from the literature using simple but effective text profiling. SNP/protein function relationships are derived by two methods, one using principles of protein structure and stability, the other based on sequence conservation. Entries for each gene include a number of links to other data, such as expression profiles, pathway context, mouse knockout information and papers. Gene-gene interactions are presented in an interactive graphical interface, providing rapid access to the underlying information, as well as convenient navigation through the network. Use of the resource is illustrated with aspects of the inflammatory response and hypertension. Conclusion The combination of SNP impact analysis, a knowledge based network of gene relationships and candidate genes, and access to a wide range of data and literature allow a user to quickly assimilate available information, and so develop models of gene-pathway-disease interaction.
机译:背景技术疾病易感性和遗传变异之间的关系是复杂的,并且许多不同类型的数据是相关的。我们描述了一种网络资源和数据库,提供了在分子水平的疾病/基因关系上尽可能多的信息。描述资源http://www.snps3d.org有三个主要模块。一个模块识别哪些基因是参与特定疾病的候选者。第二模块提供有关候选基因集之间的关系的信息。第三个模块分析了非同义SNP对蛋白质功能的可能影响。疾病/候选基因关系和基因 - 基因关系源自使用简单但有效的文本分析来源的文献。 SNP /蛋白质功能关系由两种方法推导出一种使用蛋白质结构和稳定性原理,另一个基于序列守恒。每个基因的条目包括与其他数据的许多链接,例如表达简介,路径上下文,鼠标敲除信息和论文。基因 - 基因相互作用在交互式图形界面中呈现,提供对基础信息的快速访问,以及通过网络的方便导航。使用炎症反应和高血压的方面来说明资源。结论SNP影响分析的组合,基于知识的基因关系网络和候选基因的组合,以及广泛的数据和文献的访问允许用户快速同化可用信息,因此开发基因疾病疾病相互作用的模型。

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